Search results for "dispersion"

showing 10 items of 1101 documents

"Table 20" of "Studies of quantum chromodynamics with the ALEPH detector"

1997

Unfolded values of the the mean multiplicity and dispersion of the multiplicity distributions integaretd over the rapidity region -0.5 to 0.5.

InclusiveDISPERSIONE+ E- --> Z0E+ E- ScatteringExclusiveE+ E- --> CHARGED X91.2MULT
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"Table 19" of "Studies of quantum chromodynamics with the ALEPH detector"

1997

Values of the mean values of the leading moments of the charged particle multiplicity distribution. R2 is the second binomial moment defined as MEAN(N*(N-1))/MULT**2.

InclusiveDISPERSIONE+ E- --> Z0E+ E- ScatteringExclusiveE+ E- --> CHARGED X91.2MULT
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"Table 21" of "Studies of quantum chromodynamics with the ALEPH detector"

1997

Unfolded values of the the mean multiplicity and dispersion of the multiplicity distributions integrated over the rapidity region -1.0 to 1.0.

InclusiveDISPERSIONE+ E- --> Z0E+ E- ScatteringExclusiveE+ E- --> CHARGED X91.2MULT
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"Table 23" of "Studies of quantum chromodynamics with the ALEPH detector"

1997

Unfolded values of the the mean multiplicity and dispersion of the multiplicity distributions integrated over the rapidity region -2.0 to 2.0.

InclusiveDISPERSIONE+ E- --> Z0E+ E- ScatteringExclusiveE+ E- --> CHARGED X91.2MULT
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"Table 15" of "Charged particle multiplicity distributions in restricted rapidity intervals in Z0 hadronic decays."

1992

Multiplicity moments in a single hemisphere.. CQ is defined as MEAN(MULT**Q)/MEAN(MULT)**Q.

InclusiveDISPERSIONE+ E- ScatteringE+ E- --> CHARGED X91.2MULT
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"Table 14" of "Charged particle multiplicity distributions in restricted rapidity intervals in Z0 hadronic decays."

1992

Multiplicity moments in central rapidity intervals.. CQ is defined as MEAN(MULT**Q)/MEAN(MULT)**Q.

InclusiveDISPERSIONZ ProductionE+ E- ScatteringE+ E- --> CHARGED X91.2E+ E- --> Z0 XMULT
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"Table 24" of "Studies of quantum chromodynamics with the ALEPH detector"

1997

Unfolded values of the the mean multiplicity and dispersion of the multiplicity distribution integrated over the full rapidity region.

InclusiveQuantitative Biology::BiomoleculesDISPERSIONE+ E- --> Z0E+ E- ScatteringExclusiveComputer Science::Symbolic ComputationE+ E- --> CHARGED X91.2Computer Science::Distributed Parallel and Cluster ComputingMULT
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Effect of the relative optical air mass and the clearness index on solar erythemal UV irradiance

2014

This paper analyses the effects of the clearness index (Kt) and the relative optical air mass (mr) on erythemal UV irradiance (UVER). The UVER measurements were made in Valencia (Spain) from 6:00 am to 6:00 pm between June 2003 and December 2012 and (140,000 data points). Firstly, two models were used to calculate values for the erythemal ultraviolet irradiance clearness index (KtUVER) as a function of the global irradiance clearness index (Kt). Secondly, a potential regression model to measure the KtUVER as a function of the relative optical air mass was studied. The coefficients of this regression were evaluated for clear and cloudy days, as well as for days with high and low ozone levels…

Index (economics)MeteorologyUltraviolet RaysCONSTRUCCIONES ARQUITECTONICASBiophysicsIrradianceRadiationAir mass (solar energy)medicine.disease_causeRadiation DosageOzoneRadiation MonitoringDispersion (optics)medicineRange (statistics)HumansRadiology Nuclear Medicine and imagingUltraviolet clearness indexRadiationRadiological and Ultrasound TechnologyAirRegression analysisRelative optical air massUVERClearness indexErythemaFISICA APLICADAMAQUINAS Y MOTORES TERMICOSSunlightEnvironmental scienceUltraviolet
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InN thin film lattice dynamics by grazing incidence inelastic x-ray scattering.

2011

Achieving comprehensive information on thin film lattice dynamics so far has eluded well established spectroscopic techniques. We demonstrate here the novel application of grazing incidence inelastic x-ray scattering combined with ab initio calculations to determine the complete elastic stiffness tensor, the acoustic and low-energy optic phonon dispersion relations of thin wurtzite indium nitride films. Indium nitride is an especially relevant example, due to the technological interest for optoelectronic and solar cell applications in combination with other group III nitrides.

Indium nitrideMaterials sciencePhononGeneral Physics and AstronomyPhysics::Optics:Matemàtiques i estadística::Matemàtica discreta::Combinatòria [Àrees temàtiques de la UPC]Nitridechemistry.chemical_compoundCondensed Matter::Materials ScienceWurtzite alnOpticsAb initio quantum chemistry methodsDispersion relationThin filmHexagonal InNPseudopotentialsWurtzite crystal structureCondensed matter physicsbusiness.industryScatteringLattice dynamics:Enginyeria electrònica [Àrees temàtiques de la UPC]Reticles Teoria dechemistryFISICA APLICADAbusinessSpectroscopic techniquesDinàmica reticularFundamental-band gapPhysical review letters
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Competition and inflation differentials in EMU

2008

In a monetary union, inflation rate differentials may be substantial over the business cycle. This paper parameterizes a two-country monetary union in which different economic structures in the two countries generate temporary inflation differentials. Cross-country differences are introduced in (i) the elasticity of demand in the goods markets, which cause producers to discriminate prices, (ii) the degree of price inertia and (iii) the degree of openness or preference for foreign goods in consumption. The model is calibrated to reproduce two average large EMU countries and it is able to generate such inflation differentials. We find the mechanism of price discrimination quantitatively more …

InflationConsumption (economics)Price elasticity of demandMacroeconomicsEconomics and EconometricsControl and OptimizationApplied Mathematicsmedia_common.quotation_subjectPrice discriminationCompetition (economics)EconomicsBusiness cycleOpenness to experienceStatistical dispersionmedia_commonJournal of Economic Dynamics and Control
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